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作 者:彭家寅[1] PENG Jiayin(College of Mathematics and Information Sciences, Neijiang Normal University, Neijiang, Sichuan 641199, China)
机构地区:[1]内江师范学院数学与信息科学学院
出 处:《计算机科学与探索》2019年第9期1613-1620,共8页Journal of Frontiers of Computer Science and Technology
基 金:国家自然科学基金;教育部数学与应用数学专业综合改革;四川省教育厅项目;四川省科技厅项目~~
摘 要:以事先分享的两个广义最大纠缠GHZ态为量子信道,提出了一个三维单粒子态双向受控隐形传态协议。在该协议中,遥远的两方可以在第三个遥远方的控制下同时、确定性地交换他们的三维单粒子态,这种交换在没有控制者的许可下是不会成功的。为了推广这一协议,采用投影测量和正算子值测量,分别提出了两个双向受控的三维单粒子态隐形传输协议。在这两个协议中,两个广义非最大纠缠GHZ态被用作量子信道来连接三个合法参与者,量子任务总能以一定的概率来完成。A perfect protocol for bidirectional controlled teleportation (BCT) of three- dimensional single- particle states is put forward by using pre-shared two generalized maximally entangled GHZ states as the quantum channel. In the protocol, two distant parties can simultaneously and deterministically exchange their three-dimensional singleparticle states under control of a third remote party in such a way that it cannot succeed without permission of the controller. In order to extend this protocol, two protocols for bidirectional controlled teleportation of three-dimensional single-particle states are proposed by using projective measurement and positive operator-valued measurement,respectively. In these two protocols, two generalized non-maximally entangled GHZ states are employed as the quantum channel linking three legitimate participants, and the quantum task can also be achieved with certain probability.
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